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Influence of shot peening and thermal ageing treatment on resistance to intergranular corrosion in shielded metal arc weld metal for type 600 nickel base alloy

机译:射击喷丸和热老化处理对600型镍基合金屏蔽金属弧焊金属晶间腐蚀性的影响

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摘要

Shielded metal arc weld metal for type 600 nickel base alloy (alloy 182) is used for weld components in nuclear power plants. To evaluate the intergranular corrosion resistance of alloy 182 after application of shot peening and subsequent thermal ageing treatment at 593-793 K, we conducted the corrosion test (immersed in boiled 16% sulphuric acid +5.7% copper sulphate aqueous solution at 57.6 ks) using specimens of alloy 182. The results show that the intergranular corrosion resistance of alloy 182 subjected to heat treatment at 893 K for 72 ks was improved by shot peening. Also, the intergranular corrosion resistance was not changed by thermal ageing treatment at 593-793 K subsequent to shot peening. Because remaining chromium depletion layers along grain boundaries were still observed by transmission electron microscope (TEM) after shot peening, disappearance of chromium depletion layers cannot be a factor in the improvement of the intergranular corrosion resistance. The results of measurement of surface residual stress by the X-ray diffraction method show that the compressive residual stress introduced by shot peening still remained on the surface of the specimens. Based on these observations, we assumed that chromium depletion layers along grain boundaries near the surface were dissolved by the environment of the corrosion test, the dissolved regions were closed by the compressive residual stress on the surface, and then the remaining chromium depletion layers were protected from the corrosive environment. This assumption explains why the intergranular corrosion resistance was improved although chromium depletion layers remained.
机译:600型镍基合金(合金182)的保护金属电弧焊金属用于核电厂的焊接部件。为了在593-793 K下进行喷丸处理和随后的热老化处理后评估182合金的晶间腐蚀性,我们使用182合金试样进行了腐蚀试验(在57.6 K下浸入煮沸的16%硫酸+5.7%硫酸铜水溶液中)。结果表明,经893K热处理72KS的182合金经喷丸处理后,其抗晶间腐蚀性能有所提高。此外,喷丸后在593-793 K下进行热时效处理,不会改变晶间腐蚀抗力。由于喷丸处理后,透射电子显微镜(TEM)仍能观察到沿晶界残留的铬耗尽层,因此铬耗尽层的消失不能成为提高晶间腐蚀抗力的因素。用X射线衍射法测量表面残余应力的结果表明,喷丸产生的压缩残余应力仍然存在于试样表面。基于这些观察结果,我们假设沿表面附近晶界的铬耗尽层被腐蚀试验环境溶解,溶解区域被表面上的压缩残余应力封闭,然后剩余的铬耗尽层受到保护,免受腐蚀环境的影响。这一假设解释了为什么尽管铬耗尽层仍然存在,但耐晶间腐蚀性仍有所提高。

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